- •Solution to integral momentum and energy equations with trial velocity and temperature profiles
- •Flow over a cylinder
- •Flow over a sphere
- •Heat transfer in flows across a bank of tubes
- •Reynolds analogy
- •Noncircular ducts
- •Thermal considerations
- •The mean temperature
- •Newton’s law of cooling
- •Fully developed conditions
- •Analytical solution for Nusselt number for a fully developed flow
- •Correlation for turbulent flow inside tubes and ducts
- •Problems
- •References
References 171
References
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Harvey, A.H., Peskin, A.P., Klein, S.A., 2000. NIST/ASME Steam Properties, NIST Standard Reference Database 10, Version 2.2. National Institute of Standard and Technology, Gaithersburg, MD.
Incropera, F.P., Lavine, A.S., Bergman, T.L., DeWitt, D.P., 2013. Principles of heat and mass transfer. Wiley, NY.
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Lienhard V, J.H., Lienhard IV, J.H., 2020. A Heat Transfer Textbook. Courier Dover Publications, Mineola, NY.
Meyer, C.A., McClintock, R.B., Silvestri, G.J., Spencer, Jr., R.C., 1967. ASME Steam Tables, 6th edition ASME, New York.
Whitaker, S, 1972. Forced convection heat transfer correlations for flow in pipes, past flat plates, single cylinders, single spheres, and for flow in packed beds and tube bundles. AIChE Journal 18 (2), 361–371.
Zukauskas, A., 1972. Heat transfer from tubes in cross flow. Advances in Heat Transfer 8 (1), 93–160.
